Skip to content

Gun Drill Straightness Check and Quality Verification Methods

A gun drill is only as good as its straightness. The drill rotates at high speed inside a hole that is only 0.2–0.5 mm larger than the drill diameter. A drill that is bent by 0.05 mm will wobble, producing an oversized hole, poor surface finish, and accelerated guide pad wear. Straightness verification is a critical incoming inspection for every gun drill — new and reground.

Straightness Specifications

Industry Standards

Drill Diameter (mm)Maximum Straightness DeviationMeasurement SpanTypical Method
1–60.01 mm per 100 mm lengthFull lengthV-block + dial indicator
6–150.02 mm per 300 mm lengthFull lengthV-block + dial indicator
15–250.03 mm per 300 mm lengthFull lengthV-block + dial indicator
25–400.04 mm per 300 mm lengthFull lengthRoll test or V-block

Tolerance Interpretation

Straightness DeviationEffect on Hole QualityClassification
< 0.01 mm per 300 mmNo measurable effectPremium quality
0.01–0.02 mm per 300 mmMinimal effect in most applicationsStandard new drill
0.02–0.04 mm per 300 mmNoticeable in tight-tolerance holesAcceptable for general use
0.04–0.06 mm per 300 mmOversize holes, surface finish degradationMarginal — limit to roughing
> 0.06 mm per 300 mmUnacceptable for drillingReject — do not use

Measurement Methods

V-Block and Dial Indicator Method

StepActionDetail
1Place two precision V-blocks on surface plate200–300 mm apart for short drills
2Place drill in V-blocks with shank supportedDrill tip overhangs one V-block
3Position dial indicator at midpointContact on drill body, perpendicular to axis
4Rotate drill slowlyObserve indicator reading
5Record maximum TIRPeak-to-peak reading
6Move indicator to 3–5 positions along drillAt equal intervals
7Record maximum TIR at each position
8Compare to acceptance criteriaPer diameter and length

Roll Test Method

StepActionDetail
1Place drill on a flat, clean surface plateHorizontal position
2Roll the drill slowlyObserve gap between drill and plate
3Watch for light between drill and plateIndicates bend
4Mark high spotsWith marker or tape
5Repeat at 90° rotationCheck both planes
6Estimate straightnessGap size × approximate factor

Tip: The roll test is the quickest straightness check and should be performed on every gun drill before it is placed in the machine. It takes 10 seconds and catches gross bends (> 0.05 mm) reliably. For quantitative measurement, use the V-block and dial indicator method.

Optical Comparator Method

ParameterSpecification
Magnification10–50×
Measurement resolution0.001 mm
Best forSmall drills (< 6 mm), tip geometry verification
LimitationsLimited length (comparator stage capacity)

Laser Measurement Method

ParameterSpecification
Accuracy±0.001 mm
Measurement lengthFull drill length (any)
Setup time5–10 minutes
Cost of equipment$5,000–$20,000
Best forHigh-precision drills, production verification

Runout Inspection at the Machine

In-Machine Runout Check

StepActionDetail
1Mount drill in machine spindleUse correct collet or holder
2Position dial indicator on drill ODNear the bushing (entry point)
3Rotate spindle by handSlow, steady rotation
4Read runout at bushing positionTIR at drill OD
5Move indicator to tip position10 mm from drill tip
6Read runout at tipTIR at drill tip
7Compare readingsIncreasing TIR toward tip = bend

Acceptable In-Machine Runout

Drill DiameterRunout at Bushing PositionRunout at Tip Position
< 6 mm< 0.015 mm< 0.020 mm
6–15 mm< 0.010 mm< 0.015 mm
15–25 mm< 0.008 mm< 0.012 mm
> 25 mm< 0.008 mm< 0.010 mm

Straightening Methods

When Straightening Is Possible

ConditionCan Straighten?MethodSuccess Rate
Bend < 0.02 mm over 300 mmYesLight press80–90%
Bend 0.02–0.05 mm over 300 mmYesProgressive press60–80%
Bend > 0.05 mm over 300 mmLimitedMultiple passes, risk of over-correction30–50%
Bend at braze jointNo0% — brazed joint cannot survive straightening
Bend near tip (within 20 mm)NoTip geometry will be affected

Straightening Procedure

StepActionDetail
1Identify bend location and directionV-block + indicator measurement
2Mark high side of bendPermanent marker
3Support drill on two V-blocksSpanning the bend
4Apply controlled pressure at bend apexArbor press or hydraulic press
5Over-bend slightly (spring-back allowance)Typically 2–3× the correction needed
6Release pressure and re-measureCheck straightness
7Repeat with decreasing correctionIterative
8Final measurement and documentation

Warning: Gun drills can be straightened only a limited number of times. Each straightening cycle introduces residual stress that may slowly relax. A drill that has been straightened twice is at higher risk of re-bending in service. After two straightening attempts, consider retiring the drill.

Quality Verification Documentation

Inspection Record

FieldExample
Drill part numberGD-10-1283
SupplierPrecision Tool Co.
Date received2026-06-01
Inspection date2026-06-05
Drill diameter (nominal)10.000 mm
Drill length1,200 mm
Straightness measurement methodV-block + 0.001 mm indicator
Straightness result0.008 mm TIR over 300 mm
Runout at shank0.003 mm
Tip conditionNo visible defects
AcceptancePass
Inspected byJ. Smith

FAQ

How straight does a gun drill need to be?

For general deep hole drilling, a gun drill straightness of 0.02 mm TIR or less per 300 mm of length is acceptable. For precision applications (IT6–IT7 tolerance holes), 0.01 mm per 300 mm or better is required. The drill should be at least 2× straighter than the required hole straightness — any bend in the drill is transferred directly to the hole.

How do I check gun drill straightness without special equipment?

The simplest method is the roll test: roll the drill on a clean, flat surface plate. If light is visible between the drill and the plate at any point, the drill is bent. The roll test detects bends of approximately 0.05 mm or greater. For quantitative measurement, support the drill on two V-blocks and use a dial indicator. A surface plate and V-blocks are the minimum equipment needed.

What causes a gun drill to become bent?

The most common causes are: improper handling (dropping or striking the drill), incorrect storage (drill not fully supported, causing gravitational sag), over-tightening in the collet or holder, excessive cutting forces (feed too high or material inclusion), and thermal stress from uneven heating during drilling. The drill tip (first 50 mm) is most susceptible to bending because it is unsupported during entry.

Can a bent gun drill be straightened?

Minor bends (up to 0.02 mm over 300 mm) can often be straightened using a precision press with V-block supports. The process requires skill — over-correction and spring-back make it iterative. Bends at the braze joint (where the carbide tip joins the steel shank) cannot be straightened — the brazed joint is brittle and will crack. Drills with bends exceeding 0.05 mm should be retired.

How does runout at the machine differ from drill straightness?

Runout at the machine is the combination of drill straightness, collet or holder concentricity, spindle runout, and mounting cleanliness. A perfectly straight drill can show high runout if the collet is worn or dirty. Always measure runout at the machine after mounting a drill — this is the actual runout that the hole will experience. Straightness is the drill's inherent geometry; runout is the total error in the mounting system.


Gun drill straightness is a fundamental quality attribute that directly determines hole straightness. Verify every drill before use — the 30-second roll test prevents hours of troubleshooting on bent-drill problems. This article reflects industry practice as of 2026.

Deep Hole Drilling Hub — Your Trusted Third-Party Industry Resource